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Effect of mineral oil on flashover voltage of HTV silicone rubber under AC corona ageing: from the view of trap level distribution

机译:矿物油对AC电晕老化下HTV硅橡胶闪蒸电压的影响:从陷阱水平分布看

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摘要

The flashover voltage of high temperature vulcanised (HTV) silicone rubber will be decreased after corona ageing, and it further decreases under the effect of mineral oil. The mechanisms for the phenomena can be explained by considering the role of trap level distribution. In this study, the corona ageing of silicone rubber was conducted and the flashover voltage was tested. The isothermal surface potential decay was tested to explore the internal relationship between trap distribution and flashover voltage. Besides, the surface microtopography and chemical structure of silicone rubber were gained by scanning electron microscopy and Fourier infrared spectroscopy to explain the change of trap distribution. The test results show that the flashover voltage of HTV silicone rubber decreases with AC corona ageing time, the reduction of flashover voltage for an oil-impregnated sample is more serious. The density of shallow electron traps increases at first and then decreases, while the density of shallow hole traps increases with ageing time. The density of deep traps decreases after corona ageing. These trap level distribution characteristics are beneficial to promote the development of flashover, leading to lower flashover voltage. The effect of mineral oil can be regarded as an accelerated ageing effect.
机译:电晕老化后,高温硫化(HTV)硅橡胶的闪络电压将降低,并且在矿物油的作用下进一步降低。可以通过考虑陷阱级分布的作用来解释该现象的机制。在该研究中,进行了硅橡胶的电晕老化,并测试了闪络电压。测试等温表面电位衰减以探索陷阱分布和闪络电压之间的内部关系。此外,通过扫描电子显微镜和傅里叶红外光谱来获得硅橡胶的表面微拷作和化学结构,以解释陷阱分布的变化。测试结果表明,HTV硅橡胶的闪络电压随着AC电晕老化时间而降低,油浸渍样品的闪络电压的降低更严重。浅电子阱的密度首先增加,然后减少,而浅孔陷阱的密度随着老化时间而增加。电晕老化后深陷阱的密度降低。这些陷阱级分布特性有利于促进闪络的发展,从而降低闪络电压。矿物油的作用可以被认为是加速的老化效果。

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